Carboxylic Acids of Pharmaceutical Importance
Session 12: Carboxylic Acids of Pharmaceutical Importance.
Total Session Time: 120 minutes
Prerequisites
Learning Tasks.
By the end of this session students are expected to be able to:
Resources Needed:
SESSION OVERVIEW
|Step |Time |Activity/ |Content |
| | |Method | |
|1 |05 minutes |Presentation |Introduction, Learning Tasks |
|2 |10 minutes |Brainstorming |Definition of Carboxylic Acids |
| | |Presentation | |
|3 |15 minutes |Presentation |Nomenclature of Carboxylic Acids |
|4 |15 minutes |Presentation |Chemical Structure of Carboxylic |
| | | |Acids |
|5 |15 minutes |Buzzing |Chemical Properties of Carboxylic |
| | |Presentation |Acids |
|6 |40 minutes |Group |Chemical Reactions involving |
| | |discussion |Carboxylic Acids |
| | |Presentation | |
|7 |10 minutes |Presentation |Key Points |
|8 |10 minutes |Presentation |Evaluation |
SESSION CONTENTS
STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)
READ or ASK students to read the learning tasks and clarify
ASK students if they have any questions before continuing.
STEP 2: Definition of Carboxylic Acids (10 minutes).
|Activity: Brainstorming (5 minutes) |
| |
|Ask students to brainstorm on the following question: |
| |
|What is carboxylic acid? |
| |
|ALLOW few students to respond |
| |
|WRITE their responses on the flip chart/ board |
| |
|CLARIFY and SUMMARISE by using the content below |
atom is called a carboxyl group.
called carboxylic acids.
[pic]
Condensed structures
[pic]
carboxyl group as a functional group, attached to hydrogen HCOOH or an
alkyl group as RCOOH or an aryl group as ArCOOH
STEP 3: Nomenclature of Carboxylic Acids (15 minutes).
IUPAC Names
that corresponds to the longest continuous chain of carbon atoms.
positions of substituents along the chain.
In naming, the carboxyl group takes priority over any of the functional
groups discussed previously
[pic]
[pic]
[pic]
[pic]
[pic]
[pic]
[pic]
[pic]
Some more examples of traditional names most widely used are:
STEP 4: Chemical Structure of Carboxylic Acids (15 minutes)
resonance interaction of the lone pairs of the hydroxyl oxygen with the π
system of the carbonyl.
| Carboxylic Acid | | |
| |Structure | |
|Ethanoic acid |CH3CO2H | |
|Propanoic acid |CH3CH2CO2H | |
|Fluoroethanoic acid |CH2FCO2H | |
|Chloroethanoic acid |CH2ClCO2H | |
|Dichloroethanoic acid |CHCl2CO2H | |
|Trichloroethanoic acid |CCl3CO2H | |
|Nitroethanoic acid |O2NCH2CO2H | |
STEP 5: Chemical Properties of Carboxylic Acids (15 minutes).
|Activity: Buzzing (10minutes) |
| |
|ASK students to pair up and buzz on the following question for 5 |
|minutes |
| |
|What are the chemical properties of carboxylic acid? |
| |
|ALLOW pairs to respond on the question |
| |
|WRITE their response on the flip chart/board |
| |
|CLARIFY and SUMMARIZE by using the content in the table 1 below |
The following are chemical properties of carboxylic acids;
Acidity of Carboxylic Acids
Carboxylic acids are weak acids and their carboxylic anions are strong
conjugate bases are slightly alkaline due to the hydrolysis of carboxylate
anion compared to other species, the order of acidity and basicity or
corresponding conjugate bases are as follows:
Acidity RCOOH > HOH > ROH > HC[pic] CH > NH3 > RH
Basicity RCOO– < HO– < RO– < HCC– < NH2-< R–
Reaction of Carboxylic Acids with Metals
soluble in both NaOH and NaHCO3 solutions.
For example;
carboxylate anions and hydronium ion.
[pic]
Effect of substituents on the acidity of Carboxylic Acids
would increase the acidity of carboxylic acids.
acidity of carboxylic acids.
stabilize the anion which results in increase in acidity of the
carboxylic acids.
the anion which results in decrease in acidity of carboxylic acid.
[pic]
Conversion of Carboxylic Acids into functional derivatives
as derivatives of carboxylic acids or simply acid derivatives)
by replacement of its –OH group by a Cl, OR or NH2 .
o Replacement of -OH by -Cl forms acid chlorides.
o Replacement of -OH by -OR forms ester.
o Replacement of -OH by -NH2 forms amide.
derivatives or one can say that the functional derivatives are all
readily reconverted into the acid by simple hydrolysis.
Conversion of Carboxylic Acids into Amide
ammonium salt which on further heating at high temperature give
amides.
[pic]
Conversion of Carboxylic Acids into Acid Anhydrides
Lower monocarboxylic acid on heating with dehydrating agent (say P2O5)
forms anhydrides
[pic]
Note: Anhydride of formic acid is not known, it gives CO and H2O on
heating with conc. H2SO4.
HCOOH +Conc. H2SO → H2O + CO
Reduction of Carboxylic Acids to Alcohols
Lithium aluminium hydride can reduce an acid to an alcohol; the
initial product is an alkoxide from which the alcohol is liberated by
hydrolysis.
4 R–COOH + 3LiAlH4 → 4H2 + 2LiAlO2 + (RCH2O)4 AlLi + H2
Hydrolysis of (RCH2O)4 → alcohols
STEP 6: Chemical Reactions involving Carboxylic Acids (40 minutes).
|Activity: Small Group Discussion (20 minutes) |
| |
|DIVIDE students into small groups. |
| |
|ASK students to discuss in groups on the following questions |
|What are the chemical reactions involving carboxylic acids? |
| |
|[pic]REFER Students to Book |
| |
|ALLOW students to discuss for 15 minutes |
| |
|ALLOW each group to present for 5 minutes |
| |
|CLARIFY and SUMMARIZE by using the contents below |
An overview of the chemical reactions involving carboxylic acids
[pic]
Acid chloride (ROCl)
chloride (SOCl2).
[pic]
Ester (RCOOR’)
and vegetable fats and oils.
commonly used in fragrances.
[pic]
The acid-catalyzed esterification of carboxylic acids with alcohols to give
esters is termed Fischer esterification.
Thioester (RCOSR’)
reacts with a thiol (RSH) in the presence of an acid.
[pic]
being acetyl CoA.
Acid anhydride
to the same oxygen atom.
chloride in the presence of a base.
[pic]
follows;
[pic]
chloride anion (Cl-) is the leaving group.
o In the first step, the base abstracts a proton (H+) from the
carboxylic acid to form the corresponding carboxylate anion (1).
o The carboxylate anion's negatively charged oxygen attacks the
considerably electrophilic acyl chloride's carbonyl carbon.
o As a result, a tetrahedral intermediate (2) is formed.
o In the final step, chloride – a good leaving group – is eliminated
from the tetrahedral intermediate to yield the acid anhydride.
Amide
because amines are very basic and tend to convert carboxylic acids to
their highly unreactive carboxylate ions.
o Therefore, DCC (Dicyclohexylcarbodiimide) is used to drive this
reaction.
[pic]
[pic]
group, which can then be displaced by an amine during nucleophilic
substitution to form the corresponding amide.
Relative reactivity of the carboxylic acid derivatives towards a
nucleophilic substitution reaction
[pic]
attached to a substituent (X).
o These derivatives also undergo a nucleophilic substitution reaction
with a nucleophile (Nu) as shown above.
o The reactivity of these derivatives towards nucleophilic substitution
is governed by the nature of the substituent X present in the acid
derivative.
o If the substituent (X) is electron donating, it reduces the
electrophilic nature of the carbonyl group by neutralizing the partial
positive charge developed on the carbonyl carbon, and thus makes the
derivative less reactive to nucleophilic substitution.
o If the substituent (X) is electron withdrawing, then it increases the
electrophilic nature of carbonyl group by pulling the electron density
of the carbonyl bond towards itself, making the carbonyl carbon more
reactive to nucleophilic substitution.
|Derivative |
|Substituent (X) |
|Electronic effect of X |
|Relative reactivity |
| |
|Acid chloride |
|-Cl |
|electron withdrawing |
|1 (most reactive) |
| |
|Acid anhydride |
|electron withdrawing |
|2 (almost as reactive as 1) |
| |
|Thioester |
|-SR |
|weakly electron donating |
|3 |
| |
|Ester |
|-OR |
|alkoxy (-OR) group is weakly electron donating |
|4 |
| |
|Amide |
|-NH2 |
|very strongly donating |
|5 |
| |
|Carboxylate ion |
|-O |
|Carboxylate ions are not reactive because their negative charge |
|repels the approach of other nucleophiles |
|6 (least reactive) |
| |
carboxylic acid derivatives towards nucleophilic substitution is as
follows:
Acid halide > acid anhydride > thioester > ester > amide
STEP 7: Key Points (10 minutes)
to the rest of the molecule.
organic compounds containing hydroxyl groups but are generally weaker
than the familiar mineral acids (e.g., hydrochloric acid,
HCl, sulfuric acid, H2SO4, etc.).
of carboxylic acids into esters, amides, carboxylate salts, acid
chlorides, and alcohols.
the hydrogen of the hydroxyl (–OH) group is replaced with a
metal cation.
STEP 8: Evaluation (10 minutes)
References
States: W.B. Saunders Co.
Morrison R.T and Boyd R N (1997). Organic Chemistry (6th Ed.). New Delhi,
India: Prentice Hall of India
Graham Solomon et al (2014). Organic Chemistry (11th Ed.). New Jeysey,
United States: John Willey and Sons.
Nadendla R. R. (2005). Principles of Pharmaceutical Organic Chemistry. New
Delhi, India: MacMillan Publishers
Bruice Y (2013). Organic Chemistry (7th ed.). New York, United States:
Prentice Hall Pearson.
Delgado J. N. Et al (1998). Wilson and Gisvold's Textbook of Organic
Medicinal and Pharmaceutical Chemistry (10th Ed.). California, United
States: Lippincott Williams
Bhassin S.K, Gupta R.(2013). Pharmaceutical organic chemistry (E-book
Kindle edition). New Delhi, India: Elsevier Publishing Services
Unataka kutumiwa notes hizi kupitia WhatsApp?Kwa notes zilizopangiliwa vizuri kwa kusoma offline au PDF, bonyeza kitufe hapa chini. Ujumbe wenye Level, Semester, Module na Topic utaandaliwa moja kwa moja.TUMIWA NOTES WHATSAPP